Phalloidin Labeling Probes
Invitrogen™

Phalloidin Labeling Probes

Achieve precise and reliable F-actin staining with fluorescent and biotinylated phalloidins. Phalloidin conjugates are widely used in imaging applications to selectively label F-actin in a variety of sample types including fixed and permeabilized cells, tissue sections, and cell-free experiments.
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Número de catálogoColorIntervalo de longitud de onda de excitaciónTipo de colorante
P3457NingunoNingunoFaloidina (sin marcar)
A22281Azul346⁄442Alexa Fluor™ 350
A30104Violeta405/450Alexa Fluor™ Plus 405
A12379Verde495⁄518Alexa Fluor™ 488
O7466Verde496⁄520Oregon Green™ 488
F432Verde496⁄516FITC (fluoresceína)
A22282Amarillo531⁄554Alexa Fluor™ 532
R415Rojo anaranjado540⁄565TRITC (isotiocianato de tetrametilrodamina)
A22283Naranja556⁄570Alexa Fluor™ 546
A34055Naranja555⁄565Alexa Fluor™ 555
A30106Naranja555/565 nmAlexa Fluor Plus 555
B3475Rojo558⁄569BODIPY™
A12380Rojo anaranjado578⁄600Alexa Fluor™ 568
A12381Rojo581⁄609Alexa Fluor™ 594
T7471Rojo591⁄608Texas Red™
A22284Rojo lejano632⁄647Alexa Fluor™ 633
A34054Rojo lejano633⁄647Alexa Fluor™ 635
A22287Rojo lejano650⁄668Alexa Fluor™ 647
A30107Rojo lejano650/668 nmAlexa Fluor Plus 647
A22285Infrarrojo cercano663⁄690Alexa Fluor™ 660
A22286Infrarrojo cercano679⁄702Alexa Fluor™ 680
A30105Infrarrojo cercano758/784Alexa Fluor™ Plus 750
B7474NingunoNingunoBiotin-XX
Número de catálogo P3457
Precio (MXN)
-
Color:
Ninguno
Intervalo de longitud de onda de excitación:
Ninguno
Tipo de colorante:
Faloidina (sin marcar)
Fluorescent and biotinylated phalloidins are water soluble and bind to filamentous actin (F-actin) with nanomolar affinity, making them convenient probes for labeling, identifying, and quantifying F-actin in cryopreserved tissue sections, fixed and permeabilized cells, and cell-free experiments. Phalloidin conjugates bind similarly to actin from various species, including plants and animals, enabling staining of the cytoskeleton in a wide range of samples.

A variety of phalloidin conjugates for filamentous (F-actin) staining are available, including fluorescent Alexa Fluor and Alexa Fluor Plus phalloidins, along with phalloidins conjugated to classic fluorescent dyes such as BODIPY, fluorescein, and rhodamine. Phalloidin staining is spectrally compatible with other fluorescent stains used in cellular analyses such as GFP/RFP, Qdot nanocrystals, and other Alexa Fluor conjugates and antibodies. Biotin‐XX Phalloidin can be used to visualize actin filaments via fluorescent streptavidin tags or standard enzyme-mediated avidin/streptavidin techniques such as in electron microscopy. Unlabeled phalloidin is available for use as a control in blocking F‐actin staining or in promoting polymerization.

Phalloidin conjugates bind to both large and small actin filaments with similar affinity in a 1:1 stoichiometry between phallotoxin and actin subunits. They do not bind G-actin monomers.

Alexa Fluor and Alexa Fluor Plus phalloidin conjugates for F-actin staining

Fluorescent Alexa Fluor dye conjugates of phalloidin are popular F-actin stains, offering color choices across the full spectral range. These phalloidin conjugates provide researchers with fluorescent probes that are superior in brightness and photostability compared to other spectrally similar conjugates.

Alexa Fluor Plus Phalloidin conjugates retain the same specificity for actin but offer 3-5 times greater sensitivity and brightness compared to the corresponding Alexa Fluor Phalloidin conjugate. This increased brightness is beneficial for challenging F-actin imaging, such as the super‐resolution microscopy methods SIM and STORM, and for reliable staining of actin stress fibers.

Features of phalloidin probes

  • High specificity—binds selectively to F-actin, which allows for precise labeling of actin filaments in fixed cells and cryopreserved tissues
  • Strong affinity—nanomolar binding affinity for F-actin, which ensures stable and reliable actin staining
  • Extensive fluorescent conjugate options—over twenty conjugated varieties of phalloidin
  • Compatibility with fixed samples—typically used with fixed cells and tissues, making them suitable for actin staining in detailed structural studies, immunofluorescence staining, and IHC applications
  • Multiplexing capability—the wide availability of phalloidin conjugates enables their use in combination with other fluorescent probes and antibodies for multiplex imaging. Biotinylated phalloidin can be made use of in downstream streptavidin steps.
  • Quantitative analysis—can be used for quantitative analysis of F-actin distribution and density within cells, aiding in the study of cytoskeletal dynamics. The unlabeled phalloidin can be titrated as a control.
  • Ease of use—staining is straightforward and quick
  • Excellent stability—exhibit good photostability, which is essential for prolonged imaging sessions and time-lapse studies
  • Wide applicability—used for a range of applications, including studying cell morphology, motility, and the effects of drugs on the actin cytoskeleton

Para uso exclusivo en investigación. No apto para uso en procedimientos diagnósticos.

Especificaciones
ColorNinguno
Tipo de coloranteFaloidina (sin marcar)
Intervalo de longitud de onda de excitaciónNinguno
Para utilizar con (equipo)Fluorescence Microscope, Flow Cytometer, Confocal Microscope
Cantidad1 mg
Condiciones de envíoTemperatura ambiente
Tipo de etiquetaSin marcar
Tipo de productoFaloidina
Sub Cellular LocalizationActina, citoesqueleto, Cytoskeleton
Unit SizeEach
Contenido y almacenamiento
Almacenar en congelador entre -5 °C y -30 °C

Preguntas frecuentes

Do you offer alternative package sizes for phalloidin or ReadyProbes reagents?

Alternative package sizes may be available through a custom request process. Contact Thermo Fisher Scientific customer support or your sales representative to discuss available options for the specific reagent and quantity needed.

Can I use conjugated phalloidin label probes on organoids?

Yes. Conjugated phalloidin labeling probes can be used with organoids when F-actin is accessible after fixation and permeabilization. Because organoids are thicker than monolayer cell cultures, protocol optimization may be needed, including permeabilization conditions, probe incubation time, and probe concentration.

Are conjugated phalloidin reagents antibodies?

No, Phalloidin is not an antibody. It is a bicyclic peptide toxin originally isolated from the Amanita phalloides mushroom and is used to bind and label F-actin in fixed and permeabilized samples.

Are ReadyProbes ActinRed and ActinGreen reagents stable at room temperature?

Yes. ReadyProbes ActinRed and ActinGreen reagents are designed for storage between 15°C and 30°C. Store the reagents according to the product instructions and protect them from light.

Can I use methanol instead of DMSO to reconstitute the conjugated phalloidins from the lyophilized solids?

Yes, methanol can be used to reconstitute fluorescent phalloidin, but it creates a less concentrated stock solution than DMSO. Dissolve the vial contents in 1.5 mL of methanol to yield a 40X stock solution at a concentration of 200 assays/mL, which is equivalent to approximately 6.6 µM. One unit/assay of fluorescent phalloidins is equivalent to 5 µL of the methanolic stock solution. Methanol may be used as a stock-solution solvent, but methanol-containing fixatives are not recommended because they can disrupt F-actin.

Citations & References (111)

Citations & References
Abstract
The organic anion transport polypeptide 1d1 (Oatp1d1) mediates hepatocellular uptake of phalloidin and microcystin into skate liver.
Authors:Meier-Abt F,Hammann-Hänni A,Stieger B,Ballatori N,Boyer JL
Journal:Toxicology and applied pharmacology
PubMed ID:17198718
Mutational analysis of the role of hydrophobic residues in the 338-348 helix on actin in actomyosin interactions.
Authors:Miller CJ, Doyle TC, Bobkova E, Botstein D, Reisler E
Journal:Biochemistry
PubMed ID:8619986
Yeast actin mutants with alanines replacing I341 and I345 were studied to assess the role of hydrophobic residues in the alpha-helix 338-348 in interactions with myosin. In structural models of the actomyosin complex, this helix on actin was assigned a prominent role in the strong binding of myosin to actin. ... More
Myosin is involved in postmitotic cell spreading.
Authors:Cramer LP, Mitchison TJ
Journal:J Cell Biol
PubMed ID:7559774
'We have investigated a role for myosin in postmitotic Potoroo tridactylis kidney (PtK2) cell spreading by inhibitor studies, time-lapse video microscopy, and immunofluorescence. We have also determined the spatial organization and polarity of actin filaments in postmitotic spreading cells. We show that butanedione monoxime (BDM), a known inhibitor of muscle ... More
The sequence of the myosin 50-20K loop affects Myosin's affinity for actin throughout the actin-myosin ATPase cycle and its maximum ATPase activity.
Authors:Murphy CT, Spudich JA
Journal:Biochemistry
PubMed ID:10090768
'We are interested in the role that solvent-exposed, proteolytically sensitive surface loops play in myosin function. The 25-50K loop, or loop 1, is near the ATP binding site, while the 50-20K loop (loop 2) is in the actin binding site. Through chimeric studies, we have found that loop 1 affects ... More
Gelsolin displaces phalloidin from actin filaments. A new fluorescence method shows that both Ca2+ and Mg2+ affect the rate at which gelsolin severs F-actin.
Authors:Allen PG, Janmey PA
Journal:J Biol Chem
PubMed ID:7806519
'We describe an assay for measuring both the extent and kinetics of the severing of F-actin, based on the enhanced fluorescence emission of tetramethylrhodamine-phalloidin bound to F-actin. The enhanced fluorescence is lost after exposure to active gelsolin by displacement of the phalloidin from actin during severing. This assay requires small ... More